Eigure 1A roller-coaster car may be represented by a block of mass 50.0 kg. The car is released from rest at a height h = 48.0 m above the ground and slides along a frictionless track. The car encounters a loop of radius R = 16.0 m at ground level, as shown. As you will learn in the course of this problem, the initial height 48.0m is great enough so that the car never loses contact with the track. Part A Find an expression for the kinetic energy K of the car at the top of the loop. Express the kinetic energy numerically, in joules. K = J Figure < 1 of 1 Submit Request Answer Part B Find the minimum initial height hmin at which the car can be released that still allows the car to stay in contact with the track at the top of the loop. Express your answer numerically, in meters. 1 ? hmin = Im

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Figure 1)A roller-coaster car may be represented by a
block of mass 50.0 kg. The car is released from rest at a
height h = 48.0 m above the ground and slides along a
frictionless track. The car encounters a loop of radius R =
16.0 m at ground level, as shown. As you will learn in the
course of this problem, the initial height 48.0 m is great
enough so that the car never loses contact with the track.
Part A
Find an expression for the kinetic energy K of the car at the top of the loop.
Express the kinetic energy numerically, in joules.
1] ?
K =
J
Figure
1 of 1
Submit
Request Answer
Part B
Find the minimum initial height hmin at which the car can be released that still allows the car to stay
in contact with the track at the top of the loop.
Express your answer numerically, in meters.
ΑΣφ
hmin =
m
P Pearson
Transcribed Image Text:Item 1 1 of 2 Figure 1)A roller-coaster car may be represented by a block of mass 50.0 kg. The car is released from rest at a height h = 48.0 m above the ground and slides along a frictionless track. The car encounters a loop of radius R = 16.0 m at ground level, as shown. As you will learn in the course of this problem, the initial height 48.0 m is great enough so that the car never loses contact with the track. Part A Find an expression for the kinetic energy K of the car at the top of the loop. Express the kinetic energy numerically, in joules. 1] ? K = J Figure 1 of 1 Submit Request Answer Part B Find the minimum initial height hmin at which the car can be released that still allows the car to stay in contact with the track at the top of the loop. Express your answer numerically, in meters. ΑΣφ hmin = m P Pearson
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